基于组件的暂态稳定电力系统仿真软件开发

H. Suyono, K. M. Nor, S. Yusof
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引用次数: 5

摘要

基于组件的开发(CBD)方法在软件行业中变得越来越重要。应用CBD的软件不仅可以通过组件的可重用性节省时间和成本,而且具有处理复杂问题的能力。由于CBD设计基于面向对象编程(OOP),因此可以创建、分类和管理具有良好质量和可重用性的组件,以备将来重用。面向对象的方法是基于实际对象的。OOP的机制(如封装、继承和多态性)是可以用来定义与程序相关的实际对象的优点。本文主要研究了CBD在电力系统暂态稳定仿真中的应用。求解暂态稳定问题的方法有很多,但本文采用两种方法求解TSS问题,即梯形法和修正欧拉法。通过使用IEEE数据测试系统进行测试,对电力系统暂态稳定仿真中CBD和非CBD两种方法的性能进行了评估。
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Component based development for transient stability power system simulation software
A component-based development (CBD) approach has become increasingly important in the software industry. Any software that apply the CBD will not only save time and cost through reusability of component, but also have the capability to handle the complex problems. Since CBD design is based on object-oriented programming (OOP), the components with a good quality and reusability can be created, classified and managed for future reuse. The methodology of OOP is based on the real object. The mechanism of OOP such as encapsulation, inheritance, and polymorphism are the advantages that could be used to define real objects associated with the program. This paper focused on the implementation of the CBD to power system transient stability simulation (TSS). There are many methods to solve transient stability problem, but in this paper two methods are applied to solve TSS problems, namely trapezoidal method and modified Euler method. The performance of two approaches, CBD and non CBD applications of power system transient stability simulation is assessed through tests carried out using IEEE data test systems.
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